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Biochemical indicators of soil fertility in vineyards with different conservative management systems

机译:不同保守管理制度下葡萄园土壤肥力的生化指标

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Biochemical parameters are particularly suited to evaluate soil fertility because soil microorganisms play a pivotal role in determining soil quality and functionand are very sensitive to changes in soil management and environmental conditions. For such reasons, in this work, we used several biochemical indexes to assess the effect on soil fertility of 3 different conservative management systems of vineyards. The managements compared were chemical weed control vs permanent grass (CWC/MWC), land levelling vs undisturbed soil (LL/US), conventional farming vs organic farming (CON/ORG). The following parameters were determined in 2014 and 2015 on soil samples: total organic C (TOC), extractable N (EN), soil basal respiration (SBR), microbial biomass C (B_(C)), microbial quotient (B_(C)/TOC) and metabolic quotient (qCO_(2)?=?SBR/B_(C)). Results showed that biochemical indicators were effective in detecting changes in soil fertility between compared systems. In particular, conservative systems (MWC, US and ORG) showed a larger and more efficient microbial biomass and enhanced EN content in comparison to the relative conventional systems. Furthermore B_(C)/TOC and qCO_(2)indicated higher C use efficiency in conservative systems. Results as a whole indicate that conservative management systems aimed to maintain and enhance soil organic matter displayed a higher level of soil fertility.
机译:生化参数特别适合评估土壤肥力,因为土壤微生物在确定土壤质量和功能方面起着关键作用,并且对土壤管理和环境条件的变化非常敏感。由于这些原因,在这项工作中,我们使用了几种生化指标来评估三种不同的葡萄园保守管理制度对土壤肥力的影响。比较的管理方式是化学杂草控制与永久性草(CWC / MWC),土地平整与未受干扰的土壤(LL / US),常规农业与有机农业(CON / ORG)。在2014年和2015年对土壤样品确定了以下参数:总有机碳(TOC),可萃取氮(EN),土壤基础呼吸(SBR),微生物生物量C(B_(C)),微生物商(B_(C) / TOC)和代谢商(qCO_(2)?=?SBR / B_(C))。结果表明,生化指标可有效检测比较系统之间土壤肥力的变化。特别地,与相对的传统系统相比,保守系统(MWC,US和ORG)显示出更大,更有效的微生物生物量,并增加了EN含量。此外,B_(C)/ TOC和qCO_(2)表示保守系统中更高的C使用效率。总体结果表明,旨在维持和增强土壤有机质的保守管理体系显示出较高的土壤肥力水平。

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